【24h】

Mental fatigue and working memory load estimation: Interaction and implications for EEG-based passive BCI

机译:心理疲劳和工作记忆负荷估算:基于EEG的被动BCI的相互作用和影响

获取原文

摘要

Current mental state monitoring systems, a.k.a. passive brain-computer interfaces (pBCI), allow one to perform a real-time assessment of an operator's cognitive state. In EEG-based systems, typical measurements for workload level assessment are band power estimates in several frequency bands. Mental fatigue, arising from growing time-on-task (TOT), can significantly affect the distribution of these band power features. However, the impact of mental fatigue on workload (WKL) assessment has not yet been evaluated. With this paper we intend to help fill in this lack of knowledge by analyzing the influence of WKL and TOT on EEG band power features, as well as their interaction and its impact on classification performance. Twenty participants underwent an experiment that modulated both their WKL (low/high) and time spent on the task (short/long). Statistical analyses were performed on the EEG signals, behavioral and subjective data. They revealed opposite changes in alpha power distribution between WKL and TOT conditions, as well as a decrease in WKL level discriminability with increasing TOT in both number of statistical differences in band power and classification performance. Implications for pBCI systems and experimental protocol design are discussed.
机译:当前的精神状态监视系统,也称为被动脑机接口(pBCI),允许人们对操作员的认知状态进行实时评估。在基于EEG的系统中,用于工作负载水平评估的典型度量是几个频带中的频带功率估计。不断增长的任务时间(TOT)引起的精神疲劳会严重影响这些频段功率特征的分布。但是,尚未评估精神疲劳对工作量(WKL)评估的影响。本文旨在通过分析WKL和TOT对EEG频带功率特征的影响以及它们的相互作用及其对分类性能的影响,来弥补这一知识的不足。 20名参与者进行了一项实验,该实验既调节了他们的WKL(低/高),又调节了在任务上花费的时间(短/长)。对脑电信号,行为和主观数据进行统计分析。他们揭示了在WKL和TOT条件之间的alpha功率分布的相反变化,以及随着TOT的增加,带功率和分类性能的统计差异均增加了WKL的可辨别性。讨论了对pBCI系统和实验协议设计的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号